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Exosomes: Improved methods to characterize their morphology RNA content and surface protein biomarkers

机译:外泌体:表征其形态RNA含量和表面蛋白生物标志物的改良方法

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摘要

As a type of secreted membrane vesicle, exosomes are an emerging mode of cell-to-cell communication. Yet as exosome samples are commonly contaminated with other extracellular vesicles, the biological roles of exosomes in regulating immunity and promoting oncogenesis remain controversial. Wondering whether existing methods could distort our view of exosome biology, we compared two direct methods for imaging extracellular vesicles and quantified the impact of different production and storage conditions on the quality of exosome samples. Scanning electron microscope (SEM) was compared to transmission electron microscope (TEM) as alternatives to examine the morphology of exosomes. Using SEM, we were able to distinguish exosomes from other contaminating extracellular vesicles based on the size distribution. More importantly, freezing of samples prior to SEM imaging made it more difficult to distinguish exosomes from extracellular vesicles secreted during cell death. In addition to morphology, the quality of RNA contained within the exosomes was characterized under different storage conditions, where freezing of samples also degraded RNA. Finally, we developed a new flow cytometry approach to assay transmembrane proteins on exosomes. While high-copy-number proteins could be readily detected, detecting low-copy-number proteins was improved using a lipophilic tracer that clustered exosomes. To illustrate this, we observed that exosomes derived from SKBR3 cells, a cell model for human HER2+ breast cancer, contained both HER1 and HER2 but at different levels of abundance. Collectively, these new methods will help to ensure a consistent framework to identify specific roles that exosomes play in regulating cell-to-cell communication.
机译:作为一种分泌型膜囊泡,外来体是细胞间通讯的一种新兴模式。然而,由于外泌体样品通常被其他细胞外囊泡污染,因此外泌体在调节免疫力和促进肿瘤发生中的生物学作用仍然存在争议。想知道现有方法是否会扭曲我们对外泌体生物学的看法,我们比较了两种直接对细胞外囊泡成像的方法,并量化了不同生产和储存条件对外泌体样品质量的影响。将扫描电子显微镜(SEM)与透射电子显微镜(TEM)进行比较,以检查外泌体的形态。使用SEM,我们能够根据大小分布将外泌体与其他污染的细胞外囊泡区分开。更重要的是,在SEM成像之前将样品冷冻会使细胞与细胞死亡过程中分泌的细胞外囊泡区分开来更加困难。除了形态外,还可以在不同的储存条件下表征外泌体中所含RNA的质量,在这些条件下样品的冷冻也会降解RNA。最后,我们开发了一种新的流式细胞仪方法来测定外泌体上的跨膜蛋白。虽然可以容易地检测到高拷贝数的蛋白质,但使用聚集外泌体的亲脂示踪剂可以改善对低拷贝数蛋白质的检测。为了说明这一点,我们观察到源自人类人类HER2 +乳腺癌细胞模型SKBR3细胞的外泌体同时含有HER1和HER2,但丰度不同。总的来说,这些新方法将有助于确保建立一致的框架,以识别外泌体在调节细胞间通讯中所起的特定作用。

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